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首页> 外文期刊>Applied and Environmental Microbiology >Multiple antibiotics produced by Pseudomonas fluorescens HV37a and their differential regulation by glucose.
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Multiple antibiotics produced by Pseudomonas fluorescens HV37a and their differential regulation by glucose.

机译:荧光假单胞菌HV37a产生的多种抗生素及其通过葡萄糖的差异调节。

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摘要

Pseudomonas fluorescens HV37a inhibited growth of the fungus Pythium ultimum on potato dextrose agar (PDA). An antibiotic activity produced under these conditions was fractionated and partially characterized. Extracts prepared from the PDA on which HV37a was grown revealed a single peak of antibiotic activity on thin-layer chromatograms. Similar extracts were prepared from mutants of HV37a. Their analysis indicated that the antibiotic observed in thin-layer chromatograms was responsible for fungal inhibition observed on PDA. The production of the PDA antibiotic required the presence of glucose, whereas two other antibiotic activities were produced only on potato agar without added glucose. Two mutants (denoted AfuIa and AfuIb) previously characterized as deficient in fungal inhibition on PDA showed altered regulation of the production of all three antibiotics in response to glucose. These mutants were also deficient in glucose dehydrogenase. Mutants isolated as deficient in glucose dehydrogenase were also deficient in fungal inhibition and were grouped into two classes on the basis of complementation analysis with an AfuI cosmid. Glucose regulation of antibiotic biosynthesis therefore involves at least two components and requires glucose dehydrogenase.
机译:荧光假单胞菌HV37a抑制马铃薯葡萄糖琼脂(PDA)上真菌终生腐霉的生长。在这些条件下产生的抗生素活性被分级分离并部分表征。从在其上生长HV37a的PDA制备的提取物在薄层色谱图中显示出一个单一的抗生素活性峰。从HV37a的突变体制备了类似的提取物。他们的分析表明,在薄层色谱图中观察到的抗生素是在PDA上观察到的真菌抑制的原因。 PDA抗生素的生产需要葡萄糖的存在,而其他两种抗生素活性仅在不添加葡萄糖的马铃薯琼脂上产生。先前被表征为对PDA的真菌抑制作用不足的两个突变体(称为AfuIa和AfuIb)显示了对三种葡萄糖的响应,这三种抗生素的生产调控发生了变化。这些突变体也缺乏葡萄糖脱氢酶。被分离为缺乏葡萄糖脱氢酶的突变体也缺乏真菌抑制作用,并且在与AfuI粘粒的互补分析的基础上被分为两类。因此,抗生素生物合成的葡萄糖调节涉及至少两个成分并且需要葡萄糖脱氢酶。

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